Abstract:
In an electronic device and a method of operating an electronic device according to various embodiments, the electronic device may include: a foldable housing, including a hinge, a first housing connected to the hinge and including a first surface facing a first direction and a second surface facing a second direction opposite the first direction, and a second housing connected to the hinge, including a third surface facing a third direction and a fourth surface facing a fourth direction opposite the third direction, the second housing configured to be foldable with respect to the first housing about the hinge, wherein the first surface faces the third surface in a folded state of the electronic device; a display extending from the first surface to the third surface to provide the first surface and the third surface and including a touch controller configured to control a receiving function of an input on the display; a processor disposed inside the first or second housing and operatively coupled to the display; and a memory operatively connected to the processor, wherein the memory may store instructions that, when executed, cause the processor to control the electronic device to: detect the occurrence of changing an angle between the first housing and the second housing; receive a touch interrupt produced based on an input on the display; identify characteristics of the input in response to detecting the change in the angle; and determine whether to cancel the touch event corresponding to the input based on the characteristics of the input.
Abstract:
Disclosed in the present invention is a device comprising: a housing including a first surface facing a first direction and a second surface facing a second direction; a transparent cover formed on at least a portion of the first surface of the housing; a display disposed between the transparent cover and the second surface; a sensor disposed between the display and the second surface; and a control circuit, electrically connected to the sensor, for controlling the sensor, wherein the display can comprise: a first region including a plurality of pixels capable of displaying color; and a second region aligned on at least a portion of the sensor such that light acquired from the outside of the electronic device passes through the sensor. The present invention can have various examples.
Abstract:
Disclosed is an electronic device including a wireless communication modem, at least one processor connected with the communication modem and comprising a plurality of cores, and a nonvolatile memory operatively connected with the processor, wherein the nonvolatile memory stores instructions that cause a first core of the processor to receive first data packets having a first size from the wireless communication modem, and to transmit at least a portion of the first data packets to a second core of the processor, and that cause the second core to receive the at least a portion of the first data packets from the first core, to merge the at least a portion of the first data packets into a plurality of second data packets having sizes larger than the first size, based at least in part on a type of the first data packets, and to transmit the second data packets to at least one other core of the processor than the first core and the second core.
Abstract:
An electronic device and an operating method thereof for monitoring, identifying and controlling an application and a component which excessively consume battery power are provided. The electronic device monitors an operation of an application installed therein or an operation of a component embedded therein. The electronic device checks the amount of power consumed for the operation of the application or the operation of the component at regular intervals, and based on the checked amount of power, determines whether the operation of the application or the operation of the component is an abnormal operation. If the operation of the application or the operation of the component is an abnormal operation, the electronic device identifies a policy corresponding to the abnormal operation and based on the identified policy, controls the operation of the application or the operation of the component to eliminate the abnormal operation.
Abstract:
A method and an apparatus for reducing power consumption of an electronic device are provided. The method includes executing an app in response to a first user input and switching the app to a background in response to a second user input. The method also includes confirming whether the app that has been switched to the background satisfies at least one condition and automatically limiting an operation of the app when the app that has been switched to the background satisfies the at least one condition. A result of the automatically limiting operation the operation of the app is displayed.
Abstract:
The present disclosure relates to a method for controlling a display of an electronic device and a device thereof to adjust a load of the electronic device by adjusting a resolution of the display. An operation method of the electronic device comprises: detecting, by a load detector, an amount of load on the electronic device; analyzing, by a monitoring unit, the detected amount of load and generating a graphic control signal; changing, by a graphic processing unit, a resolution of the electronic device; and displaying, by a display, data reflecting the changed resolution.
Abstract:
A method of controlling an activation area of a touch screen panel and an electronic device using the same. A method of operating an electronic device, according to an embodiment of the present disclosure, may include: setting a partial area of a touch screen panel, which corresponds to a view window of a cover that is mounted on the electronic device, as an effective touch area when the cover is closed; and when the cover mounted on the electronic device is closed, activating the partial area of the touch screen panel that corresponds to the set effective touch area. In addition, the various embodiments of the present disclosure also include other embodiments as well as the above-described embodiment.
Abstract:
An image sensor including a row driver configured to provide, at a first time, a control signal to first pixels in a first group having n consecutive odd horizontal lines, provide, at a second time, the control signal to pixels in a second group having n consecutive even horizontal lines, and provide, at a third time, the control signal to pixels in a third group having n consecutive odd horizontal lines, and having a first horizontal line next to a last horizontal line of the first group, wherein each of the n horizontal lines of the first group is separated by an at least three-row interval from a corresponding one of the n horizontal lines of the second group, and a time interval between the first time point and the second time point is equal to a time interval between the second time point and the third time point.
Abstract:
An example electronic device may include a foldable housing, including a hinge, a first housing connected to the hinge and including a first surface facing a first direction and a second surface facing a second direction opposite the first direction, and a second housing connected to the hinge, including a third surface facing a third direction and a fourth surface facing a fourth direction opposite the third direction, the second housing configured to be foldable with respect to the first housing about the hinge, wherein the first surface faces the third surface in a folded state of the electronic device; a display extending from the first surface to the third surface to provide the first surface and the third surface and including a touch controller configured to control a receiving function of an input on the display; a processor disposed inside the first or second housing and operatively coupled to the display; and a memory operatively connected to the processor, wherein the memory may store instructions that, when executed, cause the processor to control the electronic device to: detect the occurrence of changing an angle between the first housing and the second housing; receive a touch interrupt produced based on an input on the display; identify characteristics of the input in response to detecting the change in the angle; and determine whether to cancel the touch event corresponding to the input based on the characteristics of the input.
Abstract:
An image sensor includes an active pixel array, at least one dummy reset array, a dummy read array, and an image processor. The image processor sequentially resets respective rows of pixels included in the at least one dummy reset array in a period in which pixels of the active pixel array do not perform a reset operation, and sequentially reads respective rows of pixels included in the dummy read array in a period in which the pixels of the active pixel array do not perform a read operation.